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Effect of plastic deformation on a dispersion of omega-phase and mechanical properties of an Al-Cu-Mg-Ag alloy

机译:塑性变形对al-Cu-mg-ag合金的ω相分散和力学性能的影响

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摘要

Effect of cold rolling prior to ageing on a dispersion of secondary phases and mechanical properties at room temperature for an Al-5.6Cu-0.72Mg-0.5Ag-0.32Mn-0.17Sc-0.12Zr (wt. %) alloy, which was solution treated and water quenched initially, was examined. It was shown that cold working leads to significant increase in density of lattice dislocations that induces the formation discrete agglomerates of the θ¢-phase on the {100} planes. Strain of 7% provided increased aspect ratio (length to thickness) of plates that leads to moderate increase of strength. Imposing of higher strains leads to increased lattice dislocation density and the formation of deformation-induced boundaries
机译:时效后的固溶Al-5.6Cu-0.72Mg-0.5Ag-0.32Mn-0.17Sc-0.12Zr(wt。%)合金对时效冷轧对次级相分散和力学性能的影响首先检查处理后的水并进行淬火。结果表明,冷加工导致晶格位错密度显着增加,从而引起{100}平面上θ¢相的离散聚集。 7%的应变使板材的长宽比(长度与厚度)增加,从而导致强度适度增加。施加更高的应变会导致晶格位错密度增加并形成形变边界

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